'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms

M.Ing. === Inverters are daily used in industry, and to a large extent, as induction motor drives. Power levels of inverters vary from a few watt to several megawatt. The most common part of inverters is a phase arm or a pole, consisting of two power electronic switches and two freewheeling diodes....

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Published: 2015
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Online Access:http://hdl.handle.net/10210/13402
id ndltd-netd.ac.za-oai-union.ndltd.org-uj-uj-13393
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-uj-uj-133932016-10-25T03:56:02Z'n Elektroniese wisselrigter met nie-lineêre resonante fase-armsPower electronicsM.Ing.Inverters are daily used in industry, and to a large extent, as induction motor drives. Power levels of inverters vary from a few watt to several megawatt. The most common part of inverters is a phase arm or a pole, consisting of two power electronic switches and two freewheeling diodes. The hard switched phase arm is the standard in industry due to simplicity and cost. Regenerative snubbing is often used at larger power levels to reduce losses in the inverter. Some aspects of the non-linear resonant pole inverter, such as regenerative snubbing and zero voltage switching, are investigated. It is obtained by utilising a non-linear resonant tank. Low current stresses permit the optimal use of the power electronic switches. The non-linear resonant pole inverter can replace the hard switched inverter, with no restriction with respect to power levels. Experimental and analytical modelling was employed to investigate some aspects, such as controllability, losses and feasibility.2015-03-02Thesisuj:13393http://hdl.handle.net/10210/13402University of Johannesburg
collection NDLTD
sources NDLTD
topic Power electronics
spellingShingle Power electronics
'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
description M.Ing. === Inverters are daily used in industry, and to a large extent, as induction motor drives. Power levels of inverters vary from a few watt to several megawatt. The most common part of inverters is a phase arm or a pole, consisting of two power electronic switches and two freewheeling diodes. The hard switched phase arm is the standard in industry due to simplicity and cost. Regenerative snubbing is often used at larger power levels to reduce losses in the inverter. Some aspects of the non-linear resonant pole inverter, such as regenerative snubbing and zero voltage switching, are investigated. It is obtained by utilising a non-linear resonant tank. Low current stresses permit the optimal use of the power electronic switches. The non-linear resonant pole inverter can replace the hard switched inverter, with no restriction with respect to power levels. Experimental and analytical modelling was employed to investigate some aspects, such as controllability, losses and feasibility.
title 'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
title_short 'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
title_full 'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
title_fullStr 'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
title_full_unstemmed 'n Elektroniese wisselrigter met nie-lineêre resonante fase-arms
title_sort 'n elektroniese wisselrigter met nie-lineêre resonante fase-arms
publishDate 2015
url http://hdl.handle.net/10210/13402
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